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Haman, Maciej; Lipowska, Katarzyna – Developmental Science, 2023
In numerical cognition research, the operational momentum (OM) phenomenon (tendency to overestimate the results of addition and/or binding addition to the right side and underestimating subtraction and/or binding it to the left side) can help illuminate the most basic representations and processes of mental arithmetic and their development. This…
Descriptors: Preschool Children, Prior Learning, Mathematics Education, Number Concepts
Budgen, Fiona; West, John – Athens Journal of Education, 2018
Currently Australian pre-service teachers' levels of personal numeracy are under a great deal of scrutiny. There are calls for universities to raise entry standards into teaching degrees and counter-calls that the output of universities should be gauged rather than inputs. In 2015, doubts about the ability of graduate teachers to convey the…
Descriptors: Foreign Countries, College Freshmen, Student Needs, Educational Needs
Rousselle, Laurence; Noel, Marie-Pascale – Journal of Learning Disabilities, 2008
The adaptive use of approximate calculation was examined using a verification task with 18 third graders with mathematics learning disabilities, 22 typically achieving third graders, and 21 typically achieving second graders. Participants were asked to make true-false decisions on simple and complex addition problems while the distance between the…
Descriptors: Mathematics Education, Learning Disabilities, Mental Computation, Grade 3

Budden, Frank – Mathematics in School, 1972
The author argues that a knowledge of mathematical structure is only helpful to the high ability student. (MM)
Descriptors: Algebra, Arithmetic, Error Patterns, Instruction

West, Tommie A. – Arithmetic Teacher, 1971
Descriptors: Arithmetic, Educational Diagnosis, Elementary School Mathematics, Error Patterns
Cumming, J. Joy; And Others – Focus on Learning Problems in Mathematics, 1994
Tests of (n=107) third through sixth graders' basic addition facts found that 34% of errors involved the addition of zero and 83% of the remaining errors involved at least one of the digits 7, 8, or 9 when the other addend was 4 or more. (20 references) (MKR)
Descriptors: Addition, Arithmetic, Computation, Elementary Education

Nesher, Pearla – American Psychologist, 1986
In the study of mathematics instruction the focus has changed from the outcomes of learning to the cognitive processes involved in mathematics learning. This new emphasis presents a serious challenge for curriculum design, but it may also lead to more success for students in learning mathematics. (Author/VM)
Descriptors: Arithmetic, Cognitive Processes, Curriculum Development, Educational Change

Watson, Ivan – Educational Studies in Mathematics, 1980
Diagnostic interviews were conducted with third graders to determine why they made mistakes on sixteen arithmetical tasks. A modified version of the Newman method of analyzing errors is discussed and applied to these interviews. (MP)
Descriptors: Arithmetic, Cognitive Development, Computation, Elementary Education
Brown, John Seely; Burton, Richard R. – 1977
A new diagnostic modeling system for automatically synthesizing a deep structure model of a student's misconceptions or bugs in his/her basic mathematics skills provides a mechanism for explaining why a student is making a mistake as opposed to simply identifying the mistake. This report consists of four sections. The first provides examples of…
Descriptors: Arithmetic, Basic Skills, Computation, Computer Assisted Instruction
Babbitt, Beatrice C. – 1990
Although many common problem-solving errors within the realm of school mathematics have been previously identified, a compilation of such errors is not readily available within learning disabilities textbooks, mathematics education texts, or teacher's manuals for school mathematics texts. Using data on error frequencies drawn from both the Fourth…
Descriptors: Arithmetic, Cognitive Development, Computation, Elementary School Mathematics

Hativa, Nira – Journal for Research in Mathematics Education, 1988
A student was observed practicing arithmetic with a computer-assisted instruction (CAI) system. She enjoyed practice and believed that it helped. However, she consistently failed to solve problems on the computer that she could do with pencil and paper. This paper suggests reasons for her problems and draws implications for CAI. (Author/PK)
Descriptors: Arithmetic, Case Studies, Computation, Computer Assisted Instruction